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Journal Article

Citation

Kandola BK, ola, Myler P, Horrocks AR, El-Hadidi M, Blair D. Fire Safety J. 2008; 43(1): 11-23.

Copyright

(Copyright © 2008, Elsevier Publishing)

DOI

10.1016/j.firesaf.2007.04.001

PMID

unavailable

Abstract

This paper involves the optimisation of fire, mechanical and fire/heat-induced degradation of mechanical properties of recently developed, novel, fibre-reinforced epoxy composite materials incorporating intumescent and cellulosic fibres as fire-retardant (FR) additives. A number of samples with different levels and relative ratios of two additives (FR cellulosic fibre and intumescent) has been prepared and tested for their fire performance using a cone calorimeter. Their mechanical performance in tensile and flexural modes have also been investigated. The experimental results have been used to construct surface plots and develop a numerical expression, which can relate to and predict levels and optimum ratios of additives present in the composite structure with their respective fire and mechanical behaviour. Keywords: Glass fibres; High-temperature properties; Mechanical properties; Numerical analysis; Fire retardancy

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